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Online since: November 2014
Authors: Raihan Mahirah Ramli, Abdul Aziz Omar, Chong Fai Kait
Deng, Enhanced TiO2 photocatalytic degradation of bisphenol E by β-cyclodextrin in suspended solutions, Journal of Hazardous Materials 133 (2006) 85-91
Jaroniec, Photocatalytic hydrogen production over CuO-modified titania, Journal of Colloid and Interface Science 357 (2011) 223-228
Liu, Optimization of parameters on photocatalytic degradation of chloramphenicol using TiO2 as photocatalyist by response surface methodology, Journal of Environmental Sciences 22 (2010) 1281-1289
Albanis, Photocatalytic degradation using design of experiments: A review and example of the Congo red degradation, Journal of Hazardous Materials 175 (2010) 33-44
Kale, Microemulsion-mediated hydrothermal synthesis of photocatalytic TiO2 powders, Journal of Hazardous Materials 154 (2008) 649-654.
Online since: January 2017
Authors: Fawad Inam, Islam Shyha, Salah Gariani, Connor Jackson
Yi, Journal of Cleaner Production 83 (2014) 33-47
Lawal, Indian Journal of Science and Technology 6 (2013) 3951-3956
Rosli, Archives of Materials Science and Engineering 39 (2009) 38-44
Wong, JSME International Journal Series C 49 (2006) 11-20
Journal (Ed.) 11th International Conference on High Speed Machining MM Science Journal 2014, p. 7.
Online since: August 2011
Authors: Zhu Ji Jin, Shang Gao, Z.C. Tao, Heng Zhen Dai
Workpiece Materials AbrasivesofTools Removing material Solid-statereaction Soft passive film Mechanicalaction Fig. 1.Thematerial removal process of Al2O3 ceramic machined by CMG tools Preparation of CMG tools The CMG grinding tool is made of abrasive, bond, additives and pore.
Yoshikawa: Journal of Materials Processing Technology Vol. 132 (2003), p. 353 [2] F.
Eda: International Journal of Manufacturing Technology and Management Vol. 7 (2005), p. 441 [4] L.
Kamiya, etc: CIRP Annals- Manufacturing Technology Vol. 55 (2006), p. 313 [5] Nobuo Yasunaga: Journal of the Surface Science Society of Japan Vol. 22 (2001), p. 187 [6] N.
Yasunuga: Journal of Japan Society for Precision Engineering Vol. 44 (1978), p. 65 [7] Y.
Online since: March 2010
Authors: Hong Bin Cong, Ru Xin Li, Xin Yue Han
Through the material kinematics simulation in processing, both the component kinematics simulation and the system dynamic simulation of the agricultural machinery, a specific application of the simulation technology in the agriculture machinery design was displayed.
When the mass of the straws collected in bin is over the designed value, the hook will be out of a stock, and the door can smoothly open, so the materials will be discharged, and the door will close automatically by pulling force of the springs[6].
[2] K.Z.Wang, R.J.Ma and J.F.Hu : Journal of System Simulation, Vol. 18 (2006), p. 500-503
[3] G.L.Ding: Chinese Science Bulletin, Vol. 51 (2006), p. 1913-1928
[6] H.B.Cong, R.X.Li and M.Y.Zhang et al: Journal of Shihezi University Natural Science, Vol. 27 (2009), p. 499-502.
Online since: May 2011
Authors: Yang Yong Kong
Recently, the studies and technological measures adopted were mainly reflected in these aspects of the conservation of land, water, energy, material, force and so on [2].
The space of open square and pavement which was made of hard layer materials, such as granite and bluestone with different scale, shape, color and layer processing, generally gave people a deep impression of refined and high standard.
Constructing Green Space with Science and Technology for Cost Saving and Benefit Increasing.
The green space should use local indigenous plants resources and exploit the wild vegetation, especially some perfect greening materials which were tolerant to drought and high temperature.
References [1] Dandan Ma: Journal of Modern Landscape Architecture, Vol. 01 (2009), p. 26 [2] Xianying Hou: Journal of Forest Science and Technology, Vol. 04 (2007), p. 43 [3] Wei Lin: Journal of Landscape, Vol. 01 (2002), p. 19 [4] Yanlin Chen: Journal of Modern Agricultural Science and Technology, Vol. 21 (2009), p. 117 [5] Yang Wu: Journal of Shanxi Architecture, Vol. 04 (2010), p. 219
Online since: August 2011
Authors: Fu Chi Wang, Shuang Zan Zhao, Xing Wang Cheng
Study on Dynamic Mechanical Response of TC21 Alloy Shuangzan Zhao1, Xingwang Cheng1, a, Fuchi Wang1 1 School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China achengxw@bit.edu.cn Keywords: TC21 alloy; heat treatment; SHPB; flow stress; adiabatic shear band Abstract: Some results of an experimental study on high strain rate deformation of TC21 alloy are discussed in this paper.
Experimental Procedures The TC21 alloy bars used in this experiment were provide by Beijing Aviation Materials Research Institute.
[5] Chen Ju, Zhao Yongqing, Zeng Weidong: Effect of microstructure on impact toughness of TC21 alloy, Trans Nonferrous Met Soc China, Vol. 17 (2007), p93−98 [6] Feng Liang, etc: High temperature deformation behavior of TC21 alloy, Journal of Aeronautical Materials, Vol. 24 (2004), p11−13 [7] Qu Henglei, etc: Study on microstructure of TC21 alloy under different deformation conditions.
Journal of Materials Engineering, Vol.
S1(2006), p274−277 [8] Li Y L, Guo Y Z, Hu H T, Wei Q: A critical assessment of high-temperature dynamic mechanical testing of metals, International Journal of Impact Engineering, Vol. 36(2009): p1−8 [9] Hu Shisheng: Hopkinson bar technology, Ordnance Material Science and Enginnering, Vol. 11 (1991), p40-47 [10] Gong Xuhui: Dynamic tensile behavior of titanium alloys at elevated temperatures, The Chinese Journal of Nonferrous metals, Vol. 20 (2010), p647-654 [11] Blazynski T Z: Materials at high strain rates, London, New York: Elsevier Science, 1987: p133 [12] Q.
Online since: June 2014
Authors: Rashed Iqbal Faruque Mohammad, M.T. Islam, N.H.M. Hanafi, M.I. Hossain
Auxiliary Antenna Elements Antenna with conducting materials.
It has been shown that the cell phone case box made of materials with higher conductivity produces higher peak local SAR in human head [5].
Additionally, ferrite materials are expensive, frailty nature.
Abedin, “Investigation of Dosimetry in Human Head Model for a Helical Antenna with Mobile Phone,” International journal of the Physical Sciences, vol. 6, no. 5, pp. 1000-1008, 4 March 2011
Misran, “Analysis of SAR levels in human head tissues for four types of antennas with portable telephones,” Australian Journal of Basic & Applied Sciences, Vol. 5, no. 3, pp.96-107, 2011
Online since: June 2012
Authors: Ling Xia Miao, Hui Xian Zhang
Acknowledgements The work is supported by the Natural Science Research Program of Education Department of Henan Province, China(No.2011C460003).
* The work is supported by the Natural Science Research Program of Education Department of Henan Province, China(No.2011C460003).
Fatigue and Fracture of Engineering Materials and Structures, 2006, 29(12): 1075~1082
Journal of Vibration Engineering,2004,17(2):190~195
Journal of Fluids and Structures, 2005,20: 763~783
Online since: August 2014
Authors: Li Feng Fan, Jia Xin Yan, Jian Bin Yun
The analytical method of analysis is based upon simplifications of process and material behavior.
Journal of Materials Processing Technology, 2005, 164~165(5): 1089-1098 [7] Jinglei Liu, Kcjian Huang, Feng Ruan.
Journal of Plasticity Engineering, 2005, 12(3): 72-75(In Chinese) [8] M.
International Journal of Mechanical Sciences, 2007, 49(5): 533-553 [9] Xiaogang Tong.
Journal of Netshape Forming Engineering, 2011, 3(6): 80-84(In Chinese)
Online since: February 2014
Authors: Fan Song Wei, Hong Fu Xiang, Fan Na Wei, Huan Huan Lu
The Phase Structure and Electrochemical Properties of La4MgNi17M2(M=Ni,Co,Mn) Hydrogen Storage Alloys Fansong Wei a, Fanna Wei b ,Huanhuan Lu cand Hongfu Xiang d Department of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu, 212003, China azju.wei@yahoo.com.cn, bfanna0815@126.com cluhuanhuannjit@163.com,dhfxiangimr@yahoo.com.cn Key words: La-Mg-Ni system, hydrogen storage alloy, crystal structure, electrochemical property.
New energy materials[M].
Journal of Alloys and Compounds, 2004, 376(1/2): 186−195
Functional Materials, 2006, 37(2): 265−268
Rare Metal Materials and Engineering, 2008,37 (6):964-969